Affiliation:
1. ImViA Laboratory, UFR Sciences et Techniques, University of Burgundy, 21078 Dijon, France
Abstract
The optimal design and construction of multispectral cameras can remarkably reduce the costs of spectral imaging systems and efficiently decrease the amount of image processing and analysis required. Also, multispectral imaging provides effective imaging information through higher-resolution images. This study aimed to develop novel, multispectral cameras based on Fabry–Pérot technology for agricultural applications such as plant/weed separation, ripeness estimation, and disease detection. Two multispectral cameras were developed, covering visible and near-infrared ranges from 380 nm to 950 nm. A monochrome image sensor with a resolution of 1600 × 1200 pixels was used, and two multispectral filter arrays were developed and mounted on the sensors. The filter pitch was 4.5 μm, and each multispectral filter array consisted of eight bands. Band selection was performed using a genetic algorithm. For VIS and NIR filters, maximum RMS values of 0.0740 and 0.0986 were obtained, respectively. The spectral response of the filters in VIS was significant; however, in NIR, the spectral response of the filters after 830 nm decreased by half. In total, these cameras provided 16 spectral images in high resolution for agricultural purposes.
Subject
Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry
Reference52 articles.
1. Multispectral filter array design without training images;Shinoda;Opt. Rev.,2017
2. Camera Array for Multi-Spectral Imaging;Genser;IEEE Trans. Image Process.,2020
3. Thomas, J.-B., Lapray, P.-J., and Gouton, P. (2017, January June). HDR Imaging Pipeline for Spectral Filter Array Cameras. Proceedings of the Scandinavian Conference on Image Analysis, Tromsø, Norway.
4. Detecting weed-free and weed-infested areas of a soybean field using near-infrared spectral data;Chang;Weed Sci.,2004
5. Application of remote sensing methods in agriculture;Piekarczyk;Commun. Biometry Crop Sci.,2016
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献